Academic literature on the topic 'Chemical spray pyrolysis deposition'

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Journal articles on the topic "Chemical spray pyrolysis deposition"

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Paraguay D., F., M. Miki-Yoshida, and F. Espinosa-Magaña. "EELS Studies of ZnO and ZnO:In Films Deposited By Spray Pyrolysis." Microscopy and Microanalysis 7, S2 (2001): 1224–25. http://dx.doi.org/10.1017/s1431927600032190.

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Zinc oxide based coatings are of much interest in science and technology due to their interesting applications, such as in gas sensor devices, transparent electrodes, piezoelectric devices, varistor ,surface acoustic-wave devices ,etc. Thin films of ZnO also have some advantages over indium tin oxide (ITO) and tin oxide, which are usually used as transparent conductors, the former are chemically stable to a hydrogen plasma such as that used in the elaboration of solar cells. Many techniques have been employed to produce zinc oxide based coatings e.g. radio frequency magnetron, spray pyrolysis,
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Raj, C. S. A., S. Sebastian, and Susai Rajendran. "A review on Spray pyrolysis deposited CZTS thin films for solar cell applications." Journal of University of Shanghai for Science and Technology 23, no. 09 (2021): 1196–206. http://dx.doi.org/10.51201/jusst/21/09681.

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Cu2ZnSnS4 generally abridged as CZTS is a potential material for economical thin film solar cells, due to its appropriate band gap energy of around 1.5 eV and great absorption coefficient of above 104 cm-1. All the constituents of this material are plentiful in the earth’s crust, and they are non-hazardous making it an elegant alternative. Subsequent to the early achievement of the CZTS based solar cell with its light to electrical conversion efficiency of 0.6%, significant advancement in this research area has been attained, particularly in the last seven years. Currently, the conversion effe
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Khudhur, Taha Mustafa. "Effect of Preparation Method on the Physical Properties of SnO2 Thin Films." International Academic Journal of Science and Engineering 11, no. 2 (2024): 22–27. https://doi.org/10.71086/iajse/v11i2/iajse1145.

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Thin films of tin oxide SnO2 were prepared using chemical bath deposition CBD and spray pyrolysis method, the films have been examined using different techniques to investigate the optical, structural and electrical properties of them. The scanning electron microscope and x ray spectroscopy Show that the both films are amorphous and grain size within the nanoscale, where the grain size for the films prepared by CBD method was about 70nm while it was about 58nm for the films prepared by spray pyrolysis method. The energy gap also affected by the deposition method, where it was about 2.1eV and 2
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Martínez, A., J. Peña, M. Labeau, J. M. González-Calbet та M. Vallet-Regí. "The deposition of α–Fe2O3 by aerosol chemical vapor deposition". Journal of Materials Research 10, № 5 (1995): 1307–11. http://dx.doi.org/10.1557/jmr.1995.1307.

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α-Fe2O3 thin films have been deposited on Si(111) substrates at high temperatures (600–800 °C) by the spray pyrolysis method. Four different iron(III) β-diketonates have been used as precursors in order to obtain polycrystalline films of good adherence, which have been characterized by x-ray diffraction, scanning electron microscopy, and magnetic measurements.
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Ionescu, Mihnea Ioan. "Direct synthesis of carbon nanotubes on metallic foams as a cathode material with high mass load for lithium–air batteries." RSC Advances 7, no. 48 (2017): 30365–69. http://dx.doi.org/10.1039/c7ra04886f.

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Eensalu, Jako S., Atanas Katerski, Erki Kärber, Ilona Oja Acik, Arvo Mere, and Malle Krunks. "Uniform Sb2S3 optical coatings by chemical spray method." Beilstein Journal of Nanotechnology 10 (January 15, 2019): 198–210. http://dx.doi.org/10.3762/bjnano.10.18.

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Antimony sulfide (Sb2S3), an environmentally benign material, has been prepared by various deposition methods for use as a solar absorber due to its direct band gap of ≈1.7 eV and high absorption coefficient in the visible light spectrum (1.8 × 105 cm−1 at 450 nm). Rapid, scalable, economically viable and controllable in-air growth of continuous, uniform, polycrystalline Sb2S3 absorber layers has not yet been accomplished. This could be achieved with chemical spray pyrolysis, a robust chemical method for deposition of thin films. We applied a two-stage process to produce continuous Sb2S3 optic
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Boudjema, Bouzid, Radouane Daira, Abdenour Kabir, and Rafika Djebien. "Physico-Chemical Properties of CuO Thin Films Deposited by Spray Pyrolysis." Materials Science Forum 895 (March 2017): 33–36. http://dx.doi.org/10.4028/www.scientific.net/msf.895.33.

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Our work consists to the deposition of copper oxide (CuO) thin films onto glass substrates by the spray pyrolysis method. The precursor solution was copper chloride of 0.1 M and the deposition rate was 5 ml/h. The time of spray varied between 5 and 20 min and the substrate temperature was kept at 350°C. The structural, optical and electrical properties of CuO films were investigated, as a function of the spray time, by X-ray diffraction (XRD), Raman scattering, UV-visible spectroscopy in addition to the measurements of the thickness and the electrical resistivity. The obtained results indicate
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Krunks, M., J. Soon, T. Unt, A. Mere, and V. Mikli. "Deposition of p-type NiO films by chemical spray pyrolysis." Vacuum 107 (September 2014): 242–46. http://dx.doi.org/10.1016/j.vacuum.2014.02.013.

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Lung, Claudiu, Daniel Marconi, and Tudor Feher. "A Comprehensive Review of Fabrication and Characterization Methods of Hydroxyapatite." Studia Universitatis Babeș-Bolyai Physica 68, no. 1-2 (2023): 39–48. http://dx.doi.org/10.24193/subbphys.2023.04.

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This synthesis article expands on the applications of hydroxyapatite (HA) coatings on titanium dioxide (TiO2) substrates for biomedical applications, focusing on the methods of deposition and their impact on the material’s properties. Various techniques, including sol-gel, electrochemical deposition and ultrasonic spray-pyrolysis are discussed because of their ability to enhance the mechanical resistance, biocompatibility and osteointegration of implants. The analysis methods used are X-Ray Diffraction (XRD), Scanning electron Microscopy (SEM) and Fourier Transform Infrared Spectroscopy (FTIR)
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Patil, G. E., D. D. Kajale, V. B. Gaikwad, and G. H. Jain. "Spray Pyrolysis Deposition of Nanostructured Tin Oxide Thin Films." ISRN Nanotechnology 2012 (July 31, 2012): 1–5. http://dx.doi.org/10.5402/2012/275872.

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Nanostructured SnO2 thin films were grown by the chemical spray pyrolysis (CSP) method. Homemade spray pyrolysis technique is employed to prepare thin films. SnO2 is wide bandgap semiconductor material whose film is deposited on glass substrate using aqueous solution of SnCl4·5H2O as a precursor. XRD (X-ray diffraction), UV (ultraviolet visible spectroscopy), FESEM (field emission scanning electron microscopy), and EDS (energy dispersive spectroscopy) analysis are done for structural, optical, surface morphological, and compositional analysis. XRD analysis shows polycrystalline nature of sampl
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Dissertations / Theses on the topic "Chemical spray pyrolysis deposition"

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Mousa, A. M., and K. H. Jawad. "Performance of a Nano PbS/Si Hetrojunction Deposited by Chemical Spray Pyrolysis." Thesis, Sumy State University, 2015. http://essuir.sumdu.edu.ua/handle/123456789/42518.

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Deposition of polycrystalline Lead sulfide nano thin films onto Si and glass substrates at temperatures (200- 300 °C) was carried out by chemical spraying route using optimized preparative conditions. The XRD pattern confirmed the formation of PbS semiconducting films with orthorhombic structure. The electrical and optical properties of the nano crystalline thin films were studied aiming to better understanding for the electrical and opto-electrical properties of a hetrojunction with p-type Si. It was found that, the average grain size of PbS in the films was between 4 nm and 7 nm. The band ga
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Бересток, Таїсія Олександрівна, Таисия Александровна Бересток, Taisiia Oleksandrivna Berestok та ін. "Structural properties of ZnO1-хSx deposited by chemical bath deposition". Thesis, Видавництво Львівського національного університуту імені Івана Франка, 2014. http://essuir.sumdu.edu.ua/handle/123456789/38343.

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ZnO1-хSx alloys have attracted a special interest of researchers due to the possibility of controlled change of the band gap in a wide range from 3.37 eV (ZnO) to 3.68 eV (ZnS). This allows creating of effective UV photodetectors, electroluminescent devices, and others. The use of ZnO1-хSx buffer layers instead of ZnO can increase the conversion efficiency of thin-film solar cells based on CdTe, Cu(In, Ga)Se2 and Cu2ZnSnS4.
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Al-Ahmadi, Ahmad Aziz. "Fabrication and characterization of ZnO film by spray pyrolysis and ZnO polycrystalline sintered pellets doped with rear earth ions." Ohio : Ohio University, 2003. http://www.ohiolink.edu/etd/view.cgi?ohiou1175017625.

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Fiddes, Alexander James Crawford. "Deposition of zinc oxide by spray pyrolysis." Thesis, Durham University, 1993. http://etheses.dur.ac.uk/6108/.

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The objective of this work was to grow doped ZnO by spray pyrolysis at low temperature. This was achieved via the initial objective of growing ZnO in unhoped-for over a wide range of conditions, in order to understand the growth behaviour of ZnO from Zn(acac)2.H(_2)O and to establish the optimum growth procedure at high and low temperature. Various techniques were employed to characterize the films and thus determine the optimum growth conditions (i.e measurement of film thickness, resistivity, Hall coefficient. X-ray diffraction and reflection electron diffraction to name but a few).With the
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Dyachenko, A. V. "Spray pyrolysis deposition of magnesium oxide thin films." Thesis, Сумський державний університет, 2014. http://essuir.sumdu.edu.ua/handle/123456789/34844.

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Magnesium oxide seems to be a good candidate regarding its bulk properties: large band gap (7.8 eV), high thermal conductivity and stability and an alternative dielectric to silicon dioxide (SiO2) to reduce the electric field in capacitive networks. MgO, widely used as a substrate for high-temperature superconductor films deposition, has attracted much attention due to its low dielectric constant, low dielectric loss, and less mismatch with YBCO films. With a low dielectric loss, MgO shows a wide application in microwave devices. Due to its low refractive index, MgO is especially a suitable bu
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Van, Tassell Barry James. "Scalable fabrication of energy storage materials using spray deposition." Thesis, The City College of New York, 2015. http://pqdtopen.proquest.com/#viewpdf?dispub=3732023.

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<p> Developing technologies to improve our energy infrastructure grows more important every year. Sustainable production, improved efficiency, and suitable storage are all necessary to guarantee access to clean and economical energy for the future. New technologies require new methods of production, and many potentially great technologies are trapped in the lab, unable to be scaled due to limits in production technology. Energy technologies can only have an impact if they can be produced at a large scale. Spray deposition, or spray coating, has been used for decades in graphic arts and indus
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Wang, Weiliang. "Novel functional nano-coatings on glass by spray deposition." Thesis, University of Oxford, 2010. http://ora.ox.ac.uk/objects/uuid:45bd0d35-111e-4855-96f1-edf109e65b7b.

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Nanocomposite thin films with gold nanoparticles embedded in a host metal oxide prepared by spray pyrolysis deposition have been investigated. A single-step process has been developed using a one-pot solution containing precursors for both gold nanoparticles and host metal oxides. The films obtained display combined features of colouration, electrical conductivity and solar control. In this study two precursors for gold nanoparticles were used: preformed gold colloids and HAuCl<sub>4</sub>. Three metal oxide host materials, TiO<sub>2</sub>, SnO<sub>2</sub> and ZnO, were investigated. These fil
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Perednis, Dainius. "Thin film deposition by spray pyrolysis and the application in solid oxide fuel cells /." [S.l.] : [s.n.], 2003. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=15190.

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Kubrin, Roman [Verfasser], and Wolfgang [Akademischer Betreuer] Bauhofer. "Deposition of advanced phosphor coatings by flame spray pyrolysis / Roman Kubrin. Betreuer: Wolfgang Bauhofer." Hamburg-Harburg : Universitätsbibliothek der Technischen Universität Hamburg-Harburg, 2012. http://d-nb.info/1048542416/34.

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Amani, Hamedani Hoda. "Investigation of deposition parameters in ultrasonic spray pyrolysis for fabrication of solid oxide fuel cell cathode." Thesis, Atlanta, Ga. : Georgia Institute of Technology, 2008. http://hdl.handle.net/1853/26670.

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Thesis (M. S.)--Mechanical Engineering, Georgia Institute of Technology, 2009.<br>Committee Chair: Qu, Jianmin; Committee Co-Chair: Garmestani, Hamid; Committee Member: Haynes, Comas; Committee Member: Klaus-Hermann Dahmen; Committee Member: Liu, Meilin. Part of the SMARTech Electronic Thesis and Dissertation Collection.
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Books on the topic "Chemical spray pyrolysis deposition"

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Dedova, Tatjana. Chemical spray pyrolysis deposition of zinc sulfide thin films and zinc oxide nanostructured layers: Tsinksulfiidi õhukesed kiled ning tsinkoksiidi nanostruktuursed kihid keemilise pihustuspürolüüsi meetodil. 2007.

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Dyson, Glynn. The low temperature chemical vapour deposition of tungsten carbide coatings utilising the pyrolysis of tungsten hexacarbonyl. 1998.

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Book chapters on the topic "Chemical spray pyrolysis deposition"

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Deshmukh, Tushar, and Nelson Yaw Dzade. "Spray Pyrolysis: Thin Film Coating." In Simple Chemical Methods for Thin Film Deposition. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-0961-2_8.

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Díaz-Valdés, E., Ernesto Castillo-Apodaca, C. Mejía-García, and G. Contreras-Puente. "Growth of Bi-Pb-Sr-Ca-Cu-O Films by Organic Chemical Spray Pyrolysis Deposition." In Advances in Science and Technology. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/3-908158-03-6.43.

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Bohac, P., and L. Gauckler. "Chemical Spray Deposition of Ceramic Films." In Oxygen Ion and Mixed Conductors and their Technological Applications. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-017-2521-7_8.

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Ukoba, Kingsley O., and Freddie L. Inambao. "Deposition of Nanostructured TiO2/NiO Heterojunction Solar Cells Using Spray Pyrolysis." In Transactions on Engineering Technologies. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-6848-0_10.

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Chen, Chin Yi, Chung Kwei Lin, Y. R. Lyu, H. H. Lin, and Wei Hsing Tuan. "Pseudocapacitive Manganese Oxide Prepared by a Spray Pyrolysis/Electrostatic Deposition Technique." In Advances in Science and Technology. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/3-908158-01-x.1896.

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Enescu, Monica. "A Novel Spray Pyrolysis Deposition Procedure on Planar and Non-planar Surfaces." In Springer Proceedings in Energy. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09707-7_18.

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Todorovska, R., I. Nedkov, D. Kovacheva, and G. Abrashev. "In Situ Deposition of HTSC YBCO Thin Films by High Temperature Spray Pyrolysis." In Nano-Crystalline and Thin Film Magnetic Oxides. Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-011-4493-3_34.

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Anusuya, M., and V. Saravanan. "Chemical Spray Pyrolysis Method to Fabricate CdO Thin Films for TCO Applications." In Electrode Materials for Energy Storage and Conversion. CRC Press, 2021. http://dx.doi.org/10.1201/9781003145585-16.

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Velasco Manrique, Jorge, Manuel Ignacio González, Carlos Alonso Sastre, Esteban Cañibano Álvarez, and Maria Teresa Fernández Peña. "Research into Novel Coatings on Composites and Technical Polymers, with Tailored Functionalities for the Transport and Biomedical Industries." In Proceedings of the XV Ibero-American Congress of Mechanical Engineering. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-38563-6_15.

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AbstractThis work presents the methodology and results of the research into pre-treatments for thermal spray processes, applied to composites and technical polymers, as preparatory stage for the subsequent coating (ceramic and metallic) deposition via wire arc spray process. The research methodology includes the study of the thermal degradation of substrate materials, as well as the execution and characterization of mechanical (sand blasting), laser (surface texturing) and chemical (acid and base etching) pre-treatments. The quality of the proposed solutions is evaluated through visual inspect
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Leeuwenburgh, Sander, Joop G. C. Wolke, J. Schoonman, and John A. Jansen. "Chemical and Morphological Properties of Calcium Phosphate Coatings Deposited Using the Electrostatic Spray Deposition (ESD) Technique." In Bioceramics 17. Trans Tech Publications Ltd., 2005. http://dx.doi.org/10.4028/0-87849-961-x.199.

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Conference papers on the topic "Chemical spray pyrolysis deposition"

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Ramadhani, Muhammad F., Maruli A. H. Pasaribu, Brian Yuliarto, and Nugraha. "Fabrication of ZnO nanorod using spray-pyrolysis and chemical bath deposition method." In 5TH NANOSCIENCE AND NANOTECHNOLOGY SYMPOSIUM (NNS2013). AIP Publishing LLC, 2014. http://dx.doi.org/10.1063/1.4866733.

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Khatami, S. M. Navid, D. Nadun Kuruppumullage, and Olusegun J. Ilegbusi. "Characterization of Metal Oxide Sensor Thin Films Deposited by Spray Pyrolysis." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-65136.

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Chemical Spray Pyrolysis (CSP) of ZnO and SnO2 is of interest for gas sensor applications. The structural properties of the deposited film can be strongly influenced by deposition conditions. In this work, two solutions consisting of Tin Chloride and Zinc Chloride was sprayed on a heated substrate, where temperature was varied from 400° C to 450° C for ZnO, and from 350° C to 500° C for SnO2. X-ray diffraction and scanning electron microscopy, indicating a non-homogenous-structured film formed at low temperature for both oxides. At 450° C, a porous structure is observed for SnO2. This structur
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Azira, A. A., M. Rusop, Mohamad Rusop, Rihanum Yahaya Subban, Norlida Kamarulzaman, and Wong Tin Wui. "Morphology Study of Prepared Carbon Nanotubes using Palm Oil as Carbon Source in Spray Pyrolysis Chemical Vapor Deposition." In INTERNATIONAL CONFERENCE ON ADVANCEMENT OF MATERIALS AND NANOTECHNOLOGY: (ICAMN—2007). AIP, 2010. http://dx.doi.org/10.1063/1.3377896.

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Shamardin, A., D. Kurbatov, and J. Kovac. "Atypical Deposition Temperature of CZTS Thin Films in Spray-Pyrolysis Technique: Impact on Surface Morphology, Phase, and Chemical Composition." In 2020 IEEE KhPI Week on Advanced Technology (KhPIWeek). IEEE, 2020. http://dx.doi.org/10.1109/khpiweek51551.2020.9250127.

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Kumar, YB Kishore, Kiran YB, Hariprasad Tarigonda, and Raghurami Reddy Doddipalli. "Preparation of Copper Zinc Tin Sulfide Thin Film Solar Cells by Chemical Synthesis." In International Conference on Advances in Design, Materials, Manufacturing and Surface Engineering for Mobility. SAE International, 2023. http://dx.doi.org/10.4271/2023-28-0139.

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&lt;div class="section abstract"&gt;&lt;div class="htmlview paragraph"&gt;Cu&lt;sub&gt;2&lt;/sub&gt;ZnSnS&lt;sub&gt;4&lt;/sub&gt; (CZTS) is a promising quaternary semiconducting absorber layer in thin film heterojunction solar cells. All the elements of this compound semiconductor were abundant, inexpensive, and non-toxic, hence CZTS is an alternative emerging optoelectronic material for Cu(In,Ga)Se&lt;sub&gt;2&lt;/sub&gt; and CdTe solar cells. Using the traditional spray approach, these films were effectively grown at an ideal substrate temperature of 643 K. The deposited films are found to b
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Geretovszky, Zs, L. Kelemen, and T. Szörényi. "Laser Deposition of Two—Dimensional Tin Oxide Patterns." In The European Conference on Lasers and Electro-Optics. Optica Publishing Group, 1996. http://dx.doi.org/10.1364/cleo_europe.1996.cfe4.

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Close to metallic electrical conductivity, yet still high transmittance in the visible and near-IR render tin oxide films indispensable in many important applications [1]. One of the technological issues to be resolved before successful device fabrication is the efficient and controlled patterning of these films. SnOx films are physically and chemically resistant and adhere well to various substrates and so their patterning is not a straightforward matter. Here we report a novel technique for two dimensional tin oxide patterning by localized laser deposition from the traditional precursor of s
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Krunks, Malle, and Enn Mellikov. "Metal sulfide thin films by chemical spray pyrolysis." In Advanced Optical Materials and Devices, edited by Steponas P. Asmontas and Jonas Gradauskas. SPIE, 2001. http://dx.doi.org/10.1117/12.425472.

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Subbaramaiah, K., and V. Sundara Raja. "Chemical spray deposition of CuGaS2thin films." In Madras - DL tentative. SPIE, 1992. http://dx.doi.org/10.1117/12.57037.

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Pasquarelli, Robert, Maikel van Hest, Alexander Miedaner, et al. "Solution deposition of amorphous IZO films by ultrasonic spray pyrolysis." In 2009 34th IEEE Photovoltaic Specialists Conference (PVSC). IEEE, 2009. http://dx.doi.org/10.1109/pvsc.2009.5411672.

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Tismanar, I., L. Isac, A. Duta, A. C. Obreja, and O. Buiu. "TiO2 - Graphene Oxide Thin Films Obtained by Spray Pyrolysis Deposition." In 2018 International Semiconductor Conference (CAS). IEEE, 2018. http://dx.doi.org/10.1109/smicnd.2018.8539831.

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Reports on the topic "Chemical spray pyrolysis deposition"

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Mudge, Christopher, Glenn Suir, and Benjamin Sperry. Unmanned aircraft systems and tracer dyes : potential for monitoring herbicide spray distribution. Engineer Research and Development Center (U.S.), 2023. http://dx.doi.org/10.21079/11681/47705.

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Chemical control of nuisance aquatic vegetation has long been the most widely utilized management tool due to its high level of efficacy, limited environmental impacts, and relatively low cost. However, unprecise application of herbicides can lead to uncontrolled invasive plants and unintended management costs. Therefore, precision herbicide delivery techniques are being developed to improve invasive plant control and minimize impacts to non-target plants. These technological advancements have the potential to enhance aquatic ecosystem protection from invasive species while reducing associated
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